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DS50002445A-page 2 2015 Microchip Technology Inc.
Information contained in this publication regarding deviceapplications and the like is provided only for your convenienceand may be superseded by updates. It is your responsibility toensure that your application meets with your specifications.MICROCHIP MAKES NO REPRESENTATIONS ORWARRANTIES OF ANY KIND WHETHER EXPRESS ORIMPLIED, WRITTEN OR ORAL, STATUTORY OROTHERWISE, RELATED TO THE INFORMATION,INCLUDING BUT NOT LIMITED TO ITS CONDITION,QUALITY, PERFORMANCE, MERCHANTABILITY ORFITNESS FOR PURPOSE. Microchip disclaims all liabilityarising from this information and its use. Use of Microchipdevices in life support and/or safety applications is entirely atthe buyer’s risk, and the buyer agrees to defend, indemnify andhold harmless Microchip from any and all damages, claims,suits, or expenses resulting from such use. No licenses areconveyed, implicitly or otherwise, under any Microchipintellectual property rights unless otherwise stated.
Note the following details of the code protection feature on Microchip devices:
• Microchip products meet the specification contained in their particular Microchip Data Sheet.
• Microchip believes that its family of products is one of the most secure families of its kind on the market today, when used in the intended manner and under normal conditions.
• There are dishonest and possibly illegal methods used to breach the code protection feature. All of these methods, to our knowledge, require using the Microchip products in a manner outside the operating specifications contained in Microchip’s Data Sheets. Most likely, the person doing so is engaged in theft of intellectual property.
• Microchip is willing to work with the customer who is concerned about the integrity of their code.
• Neither Microchip nor any other semiconductor manufacturer can guarantee the security of their code. Code protection does not mean that we are guaranteeing the product as “unbreakable.”
Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of ourproducts. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright Act. If such actsallow unauthorized access to your software or other copyrighted work, you may have a right to sue for relief under that Act.
Microchip received ISO/TS-16949:2009 certification for its worldwide headquarters, design and wafer fabrication facilities in Chandler and Tempe, Arizona; Gresham, Oregon and design centers in California and India. The Company’s quality system processes and procedures are for its PIC® MCUs and dsPIC® DSCs, KEELOQ® code hopping devices, Serial EEPROMs, microperipherals, nonvolatile memory and analog products. In addition, Microchip’s quality system for the design and manufacture of development systems is ISO 9001:2000 certified.
QUALITY MANAGEMENT SYSTEM CERTIFIED BY DNV
== ISO/TS 16949 ==
Trademarks
The Microchip name and logo, the Microchip logo, dsPIC, FlashFlex, flexPWR, JukeBlox, KEELOQ, KEELOQ logo, Kleer, LANCheck, MediaLB, MOST, MOST logo, MPLAB, OptoLyzer, PIC, PICSTART, PIC32 logo, RightTouch, SpyNIC, SST, SST Logo, SuperFlash and UNI/O are registered trademarks of Microchip Technology Incorporated in the U.S.A. and other countries.
The Embedded Control Solutions Company and mTouch are registered trademarks of Microchip Technology Incorporated in the U.S.A.
Analog-for-the-Digital Age, BodyCom, chipKIT, chipKIT logo, CodeGuard, dsPICDEM, dsPICDEM.net, ECAN, In-Circuit Serial Programming, ICSP, Inter-Chip Connectivity, KleerNet, KleerNet logo, MiWi, motorBench, MPASM, MPF, MPLAB Certified logo, MPLIB, MPLINK, MultiTRAK, NetDetach, Omniscient Code Generation, PICDEM, PICDEM.net, PICkit, PICtail, RightTouch logo, REAL ICE, SQI, Serial Quad I/O, Total Endurance, TSHARC, USBCheck, VariSense, ViewSpan, WiperLock, Wireless DNA, and ZENA are trademarks of Microchip Technology Incorporated in the U.S.A. and other countries.
SQTP is a service mark of Microchip Technology Incorporated in the U.S.A.
Silicon Storage Technology is a registered trademark of Microchip Technology Inc. in other countries.
GestIC is a registered trademark of Microchip Technology Germany II GmbH & Co. KG, a subsidiary of Microchip Technology Inc., in other countries.
All other trademarks mentioned herein are property of their respective companies.
© 2015, Microchip Technology Incorporated, Printed in the U.S.A., All Rights Reserved.
ISBN: 978-1-5224-0104-9
Object of Declaration: MCP39F511N Power Monitor Demonstration Board
VP Development Tools
2015 Microchip Technology Inc. DS50002445A-page 3
MCP39F511N Power Monitor Demonstration Board User’s Guide
NOTES:
DS50002445A-page 4 2015 Microchip Technology Inc.
MCP39F511N POWER MONITORDEMONSTRATION BOARD
USER’S GUIDE
Table of Contents
Preface ........................................................................................................................... 7Introduction............................................................................................................ 7
Document Layout .................................................................................................. 7
Conventions Used in this Guide ............................................................................ 8
Recommended Reading........................................................................................ 9
The Microchip Web Site ........................................................................................ 9
Customer Support ................................................................................................. 9
Document Revision History ................................................................................... 9
Chapter 1. Product Overview1.1 Introduction ................................................................................................... 111.2 What the MCP39F511N Power Monitor Demonstration Board Kit
Includes .................................................................................................. 12
Chapter 2. Installation and Operation2.1 Getting Started ............................................................................................. 13
Chapter 3. Hardware Description3.1 Input and Analog Front End ......................................................................... 17
3.2 Power Supply Circuit .................................................................................... 18
Appendix A. Schematic and LayoutsA.1 Introduction .................................................................................................. 19
A.2 Schematics and PCB Layout ....................................................................... 19
A.3 Board – Schematic ....................................................................................... 20
A.4 Board – Schematic (Continued) ................................................................... 21
A.5 Board – Top Silk .......................................................................................... 22
A.6 Board – Top Copper and Silk ....................................................................... 23
A.7 Board – Top Copper .................................................................................... 24
A.8 Board – Bottom Copper ............................................................................... 25
A.9 Board – Bottom Copper and Silk ................................................................. 26
A.10 Board – Bottom Silk ................................................................................... 27
Appendix B. Bill of Materials (BOM)........................................................................... 29
Worldwide Sales and Service .................................................................................... 32
2015 Microchip Technology Inc. DS50002445A-page 5
MCP39F511N Power Monitor Demonstration Board User’s Guide
NOTES:
DS50002445A-page 6 2015 Microchip Technology Inc.
MCP39F511N POWER MONITORDEMONSTRATION BOARD
USER’S GUIDE
Preface
INTRODUCTION
This chapter contains general information that will be useful to know before using the MCP39F511N Power Monitor Demonstration Board. Items discussed in this chapter include:
• Document Layout
• Conventions Used in this Guide
• Recommended Reading
• The Microchip Web Site
• Customer Support
• Document Revision History
DOCUMENT LAYOUT
This document describes how to use the MCP39F511N Power Monitor Demonstration Board as a demonstration board to evaluate the MCP39F511N device. The manual layout is as follows:
• Chapter 1. “Product Overview” – Provides important information about the MCP39F511N Power Monitor Demonstration Board
• Chapter 2. “Installation and Operation” – Provides information on using the MCP39F511N Power Monitor Demonstration Board, including Section 2.1.1 “Step 1: Wiring connections” that describes wiring the line and load connections
• Chapter 3. “Hardware Description” – Provides details on the functional blocks of the power monitor, including the analog front-end design and power supply design
• Appendix A. “Schematic and Layouts” – Shows the schematic and layout diagrams
• Appendix B. “Bill of Materials (BOM)” – Lists the parts used to build the MCP39F511N Power Monitor Demonstration Board
NOTICE TO CUSTOMERS
All documentation becomes dated, and this manual is no exception. Microchip tools and documentation are constantly evolving to meet customer needs, so some actual dialogs and/or tool descriptions may differ from those in this document. Please refer to our web site (www.microchip.com) to obtain the latest documentation available.
Documents are identified with a “DS” number. This number is located on the bottom of each page, in front of the page number. The numbering convention for the DS number is “DSXXXXXXXA”, where “XXXXXXX” is the document number and “A” is the revision level of the document.
For the most up-to-date information on development tools, see the MPLAB® IDE online help. Select the Help menu, and then Topics to open a list of available online help files.
2015 Microchip Technology Inc. DS50002445A-page 7
MCP39F511N Power Monitor Demonstration Board User’s Guide
CONVENTIONS USED IN THIS GUIDE
This manual uses the following documentation conventions:
DOCUMENTATION CONVENTIONS
Description Represents Examples
Arial font:
Italic characters Referenced books MPLAB® IDE User’s Guide
Emphasized text ...is the only compiler...
Initial caps A window the Output window
A dialog the Settings dialog
A menu selection select Enable Programmer
Quotes A field name in a window or dialog
“Save project before build”
Underlined, italic text with right angle bracket
A menu path File>Save
Bold characters A dialog button Click OK
A tab Click the Power tab
N‘Rnnnn A number in verilog format, where N is the total number of digits, R is the radix and n is a digit.
4‘b0010, 2‘hF1
Text in angle brackets < > A key on the keyboard Press <Enter>, <F1>
Courier New font:
Plain Courier New Sample source code #define START
Filenames autoexec.bat
File paths c:\mcc18\h
Keywords _asm, _endasm, static
Command-line options -Opa+, -Opa-
Bit values 0, 1
Constants 0xFF, ‘A’
Italic Courier New A variable argument file.o, where file can be any valid filename
Square brackets [ ] Optional arguments mcc18 [options] file [options]
Curly brackets and pipe character: { | }
Choice of mutually exclusive arguments; an OR selection
errorlevel {0|1}
Ellipses... Replaces repeated text var_name [, var_name...]
Represents code supplied by user
void main (void){ ...}
DS50002445A-page 8 2015 Microchip Technology Inc.
Preface
RECOMMENDED READING
This user's guide describes how to use MCP39F511N Power Monitor Demonstration Board. Another useful document is listed below. The following Microchip document is available and recommended as a supplemental reference resource:
MCP39F511N Data Sheet – “Dual-Channel, Single-Phase Power-Monitoring IC with Calculation” (DS20005473)
This data sheet provides detailed information regarding the MCP39F511N device.
THE MICROCHIP WEB SITE
Microchip provides on-line support via our web site at www.microchip.com. This web site is used as a means to make files and information easily available to customers. Accessible by using your favorite Internet browser, the web site contains the following information:
• Product Support – Data sheets and errata, application notes and sample programs, design resources, user’s guides and hardware support documents, latest software releases and archived software
• General Technical Support – Frequently Asked Questions (FAQs), technical support requests, on-line discussion groups, Microchip consultant program member listing
• Business of Microchip – Product selector and ordering guides, latest Microchip press releases, listing of seminars and events, listings of Microchip sales offices, distributors and factory representatives
CUSTOMER SUPPORT
Users of Microchip products can receive assistance through several channels:
• Distributor or Representative
• Local Sales Office
• Field Application Engineer (FAE)
• Technical Support
Customers should contact their distributor, representative or field application engineer (FAE) for support. Local sales offices are also available to help customers. A listing of sales offices and locations is included in the back of this document.
Technical support is available through the web site at: http://support.microchip.com
DOCUMENT REVISION HISTORY
Revision A (December 2015)
• Initial Release of this Document.
2015 Microchip Technology Inc. DS50002445A-page 9
MCP39F511N Power Monitor Demonstration Board User’s Guide
NOTES:
DS50002445A-page 10 2015 Microchip Technology Inc.
MCP39F511N POWER MONITORDEMONSTRATION BOARD
USER’S GUIDE
Chapter 1. Product Overview
1.1 INTRODUCTION
The MCP39F511N Power Monitor Demonstration Board is a fully functional dual-channel single-phase power and energy monitor. For each channel, the system calculates active power, reactive power, RMS current, RMS voltage, active energy, (both import and export), reactive energy and other typical power quantities for two separate loads, as defined in the MCP39F511N data sheet.
The MCP39F511 Power Monitor Utility software is used to calibrate and monitor the system, and can be used to create custom calibration setups. For most accuracy requirements, only a single-point calibration is needed. The energy meter software offers an automated step-by-step calibration process that can be used to quickly calibrate energy meters.
This demonstration board uses the Power Monitor Utility Software for evaluation via a USB connection to the board. A download link for this software can be found on the evaluation board’s web page. For instructions on the use of this software, refer to the software’s supporting documentation included within the application install package.
FIGURE 1-1: MCP39F511N Power Monitor Demonstration Board.
2015 Microchip Technology Inc. DS50002445A-page 11
MCP39F511N Power Monitor Demonstration Board User’s Guide
1.2 WHAT THE MCP39F511N POWER MONITOR DEMONSTRATION BOARD KIT INCLUDES
This MCP39F511N Power Monitor Demonstration Board kit includes:
• MCP39F511N Power Monitor Demonstration Board (ADM00706)
• AC Line Cable
• Two IEC-to-Female AC Load Cables
• Mini-USB Cable
• Important Information Sheet
DS50002445A-page 12 2015 Microchip Technology Inc.
MCP39F511N POWER MONITORDEMONSTRATION BOARD
USER’S GUIDE
Chapter 2. Installation and Operation
2.1 GETTING STARTED
To use the MCP39F511N Power Monitor Demonstration Board, follow the steps described in the sections below. The meter design uses a 5A load for calibration current and a maximum current (IMAX) of 15A.
It is not recommended to put more than 15A through the AC plugs mounted on the Printed Circuit Board (PCB).
To test the calibrated meter, the following connections can be made:
2.1.1 Step 1: Wiring connections
Figure 2-1 identifies the line and two load connections of the MCP39F511N Power Monitor Demonstration Board.
FIGURE 2-1: Connecting the MCP39F511N Power Monitor Demonstration Board.
2015 Microchip Technology Inc. DS50002445A-page 13
MCP39F511N Power Monitor Demonstration Board User’s Guide
2.1.2 Step 2: Connect line/load power to the meter (power the meter)
The meter will turn on when the line connection has between 90V to 220V connected. One or two loads can be connected to the meter.
2.1.3 Step 3: Connect the USB cable to a PC with the installed MCP39F511N Power Monitor Utility software
Select the appropriate COM port. If the meter is connected correctly, the connection status in the bottom left corner of the software will display “Meter Connected”. If no meter is found, the status will be “Meter Disconnected”. Check that the correct COM port was selected and try again. Press the Start Icon to begin showing output data and UART transmission between the PC and the MCP39F511N.
DS50002445A-page 14 2015 Microchip Technology Inc.
MCP39F511N POWER MONITORDEMONSTRATION BOARD
USER’S GUIDE
Chapter 3. Hardware Description
FIGURE 3-1: MCP39F511N Power Monitor Demonstration Board Top View.
Legend:
1 = MCP39F511N 8 = Header for connection to external master MCU (isolated)
2 = +9V DC Input (nonisolated) 9 = Jumper selection for external MCU or USB (GUI) operation
3 = Current Sensing Shunt - Channel 1 10 = Isolation IC
4 = Current Sensing Shunt - Channel 2 11 = Switching AC/DC Power Supply
5 = Output LEDs for digital I/O 12 = 200:1 Voltage Divider for Voltage Input
6 = Headers for digital I/O testing (isolated) 13 = Jumper for DC or Switching AC/DC Supply
7 = USB Connection (isolated)
1
76
5
4
3
2
8
9
10
11
12
13
2015 Microchip Technology Inc. DS50002445A-page 15
MCP39F511N Power Monitor Demonstration Board User’s Guide
FIGURE 3-2: MCP39F511N Power Monitor Demonstration Board Bottom View.
Legend:
14 = Line connection AC supply (80-230V)
15 = Load connection for Channel 1 (15 A maximum recommended current)
16 = Load connection for Channel 2 (15 A maximum recommended current)
1415
16
DS50002445A-page 16 2015 Microchip Technology Inc.
Hardware Description
3.1 INPUT AND ANALOG FRONT END
The MCP39F511N Power Monitor Demonstration Board will operate from 80V to 230V. At the bottom of the main board, there are the high-voltage line and neutral connections. The shunts sit on the neutral or low-side of a two-wire system. The board comes populated with two surface mount 2 m shunts.
The line side of the two-wire system goes into a resistive divider on the voltage channel input, along with a DC offset added from VDD. Anti-aliasing low-pass filters are included. The voltage channel uses two 499 k resistors and the additional components to achieve a divider ratio of approximately 236:1. For a line voltage of 236 VRMS, the channel 1 input signal size will be 1VRMS with a DC offset voltage of DVDD/2 per the schematic snippet below.
FIGURE 3-3: Analog Front-End Circuitry.
Note that all of the analog circuitry associated with this part of the circuit is connected to the analog ground plane (AGND).
I1-
I1+
V+
NL
33 nF
33 nF
1 k
1 k
5.1 k
499 k
33 nF
499 k
- +
2 m
LO
AD
- +
2 m
LO
AD I2-
33 nF
1 k
I2+33 nF
1 k
NL
47µ F
51 k
51 k
+3.3V
MCP39F511N
+
33 nF
1 k
2015 Microchip Technology Inc. DS50002445A-page 17
MCP39F511N Power Monitor Demonstration Board User’s Guide
3.2 POWER SUPPLY CIRCUIT
The power supply circuit for the MCP39F511N Power Monitor Demonstration Board is shown in Figure 3-4.
FIGURE 3-4: Power Supply Circuit with Option for AC/DC Switching Supply from Mains or DC Supply.
150 FB 47
4.7 µF
1 3 2
0.1 µF
+3.3 VD
+
10 µF
IN OUTGND
MCP1754
0.1 µF
AGND
GNDB GNDB
GNDB GNDB GNDB GNDB
NT
‘ 0.1 µF 10 µF
AGND AGND
+3.3 VA33
+
GNDB
4.7 µF
BP
FB
D
SSSS
0.1 µF
GNDB
+
GNDB
100 µF
GNDB
8.25V
47
150 FB
DC SUPPLY
AC/DC SUPPLYAC/DC SUPPLYJP2
8.25V
LNK3048.2K
2.05K
10 µF
2.05K
L
N
1 mH
GNDB
DS50002445A-page 18 2015 Microchip Technology Inc.
MCP39F511N POWER MONITORDEMONSTRATION BOARD
USER’S GUIDE
Appendix A. Schematic and Layouts
A.1 INTRODUCTION
This appendix contains the following schematics and layouts for of the MCP39F511N Power Monitor Demonstration Board:
• Board – Schematic
• Board – Schematic (Continued)
• Board – Top Silk
• Board – Top Copper and Silk
• Board – Top Copper
• Board – Bottom Copper
• Board – Bottom Copper and Silk
• Board – Bottom Silk
A.2 SCHEMATICS AND PCB LAYOUT
The layer order is shown in Figure A-1.
FIGURE A-1: Layer Order.
Top Layer
Bottom Layer
2015 Microchip Technology Inc. DS50002445A-page 19
MC
P39
F5
11N
Po
wer M
on
itor D
emo
ns
tration
Bo
ard U
ser’s G
uid
e
DS
50
00
24
45
A-p
ag
e 2
0
20
15
Micro
chip
Te
chn
olo
gy In
c.
A.3 BOARD – SCHEMATIC
Sc
he
matic an
d L
ayo
uts
2
01
5 M
icroch
ip T
ech
no
log
y Inc.
DS
50
00
24
45
A-p
ag
e 2
1
A.
AGND
3.3A3.3D
GNDB
GNDB GNDB GNDB
25V0.1uF0603
C2725V0.1uF0603
C23
AGND AGND
MPU_RX1
MPU_TX1
3.3D
3.3D
GNDB
GNDB
IsolationBarrier
25V0.1uF0603
C28
33R06035%
R20
Male 1x4
ACSL-7210
VDD11
VOA2
VIB3
GND14
VDD2 8
VIA 7
VOB 6
GND2 5
VDD1VOAVIBGND1
VDD2VIAVOB
GND2
U6
100R06035%
R22
100R06035%
R21
ternal isolated serial comm
10uF10V0805
C2510uF10V0805
C22
MCP1754S/3.3VVOUT 3VIN1
GND
2
VOUTVIN
GNDV
U5
Net Tie
NT1
4 BOARD – SCHEMATIC (CONTINUED)
+9V INPOWER MRA4005
D3
LINE
NEUTRAL
VOLT
AGE DIV
IDER
GNDB
+9V IN
FB3
GNDB
FB4
25V0.1uF0603
C26
LINE
NEUTRAL NEUTRAL_OUT1
IEC Outlet C13
G2
N3
L1
G
N
L
J2
[SHUNT]
DISC 14mmS14K275
MOV1
GND_ISO
GND_ISO
5VUSB
25V0.1uF0603
C29
GND_ISO
GND_ISO
5VUSB
HDR-2.54
Yes
12
34
J5
GND_ISO
5VUSB
100R06035%
R32
100R06035%
R31
5VUSB
ExEXT_RXEXT_TX
MRA4005
D2
LNK304S 8
S 6BP
1D4 S 7FB
2S
SBP
DS
FB
S 5
U3
0.1uF25V0603
C17470R25125%
R4
470R25125%
R10
ES1GD1
MRA4005D4
100uF16VAL-D
C6
8.2k06031%
R17
2.05k06031%
R16
GNDB
4.7uF25V0805
C18
10uF25V1206
C24
2.05k06031%
R12
USB_NUSB_P
0.47uF6.3V0603
C32RXTX
RESET
10k06031%
R35
VUSB
USB_NUSB_P
RX
TX
4.7uF10V0805
C30
GND_ISO
5VUSB
5VUSB
5VUSB
4.7uF400VRAD_P3.5D8H13
C104.7uF400VRAD_P3.5D8H13
C111mH
L11mH
L2
USB MINI-B Female
ID 4
VBUS 1
GND 5
D- 2
D+ 3
0
J10
GND_ISO
HDR-2.54 Male 1x3
11 2 3
JP3
HDR-2.54 Male 1x3
12
3
JP2
25V0.1uF0603
C31
IEC Inlet C14
G 2
N 3
L 1
G
N
L
J1
0.01uF330VRAD-P10L13W4H9
C1
MCP2221
VDD1
GP02
GP13
RST4
UART RX5
UART TX6
GP27 GP3 8SDA 9SCL 10VUSB 11D- 12D+ 13VSS 14VDDGP0GP1RSTUART RXUART TXGP2 GP3
SDASCL
VUSBD-D+
VSS
U11
POWER 2.5mm231J3
S
Vin
RX_LEDTX_LED
21
4 3GREEN
RED
RED, GREEN
LD5
RX_LED
TX_LED5VUSB
1k06031%
R34
1k06031%
R33
GND_ISO
GND_ISO
GND_PWR
+8.25V
EARTH
IEC Outlet C13
G2
N3
L1
G
N
L
J4
LINE
NEUTRAL_OUT2[SHUNT]NEUTRAL
MCP39F511N Power Monitor Demonstration Board User’s Guide
A.5 BOARD – TOP SILK
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Schematic and Layouts
A.6 BOARD – TOP COPPER AND SILK
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MCP39F511N Power Monitor Demonstration Board User’s Guide
A.7 BOARD – TOP COPPER
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MCP39F511N Power Monitor Demonstration Board User’s Guide
A.9 BOARD – BOTTOM COPPER AND SILK
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MCP39F511N Power Monitor Demonstration Board User’s Guide
NOTES:
DS50002445A-page 28 2015 Microchip Technology Inc.
MCP39F511N POWER MONITORDEMONSTRATION BOARD
USER’S GUIDE
Appendix B. Bill of Materials (BOM)
TABLE B-1: BILL OF MATERIALS (BOM)
Qty. Reference Description Manufacturer Part Number
1 C1 Capacitor film 0.01 µF 330V 20% RAD P10L13W4H9
EPCOS AG B32911A3103M
6 C2, C3, C4, C5, C7, C15
Capacitor ceramic 0.033 µF 50V 10% X7R SMD 0603
TDK Corporation C1608X7R1H333K
1 C6 Capacitor alum. 100 µF 16V 20% SMD D Nichicon Corporation UWX1C101MCL1GB
3 C8, C22, C25
Capacitor ceramic 10 µF 10V 10% X7R SMD 0805
TDK Corporation C2012X7R1A106K125AC
10 C9, C12, C13, C17, C23, C26, C27, C28, C29, C31
Capacitor ceramic 0.1 µF 25V 10% X7R SMD 0603
Murata Electronics GRM188R71E104KA01D
2 C10, C11 Capacitor alum. 4.7 µF 400V 20% RAD_P3.5D8H13
Nichicon Corporation UVC2G4R7MPD1TD
1 C14 Capacitor tantalum 47 µF 4V 10% 2.6Ohm SMD A
AVX Corporation TAJA476K004RNJ
1 C18 Capacitor ceramic 4.7 µF 25V 10% X7R SMD 0805
TDK Corporation C2012X7R1E475K125AB
1 C24 Capacitor ceramic 10 µF 25V 10% X7R SMD 1206
Taiyo Yuden Co., Ltd. TMK316B7106KL-TD
1 C30 Capacitor ceramic 4.7 µF 10V 10% X5R SMD 0805
Taiyo Yuden Co., Ltd. LMK212BJ475KD-T
1 C32 Capacitor ceramic 0.47 µF 6.3V 10% X5R SMD 0603
Murata Electronics® GRM188R60J474KA01D
1 CBL1 Mech. HW cable USB-A male-to-mini USB-B male 3 ft black
Katerno 10UM-02103BK
2 CBL2, CBL3 Mech. HW 1ft 18 AWG monitor power adapter cord (NEMA 5-15R to IEC320C14)
Katerno 152360
1 CBL4 Mech. HW 6 ft 16 AWG universal power cord (IEC320C13 to NEMA 5-15P)
Katerno 153879
1 D1 Diode rectifier ES1G 1.25V 1A 400V SMD DO-214AC_SMA
Diodes® Incorporated ES1G-13-F
3 D2, D3, D4 Diode rectifier MRA4005 1.1V 1A 600V DO-214AC_SMA
ON Semiconductor® MRA4005T3G
1 ENCLO-SURE1
Mech. enclosure slim ref. side port meter Tech-Demos.com TD03-0102R0
4 FB1, FB2, FB5, FB6
Ferrite 800mA 0.15R SMD 0805 Laird Technologies® LI0805H151R-10
2 FB3, FB4 Ferrite 7A RAD P5L5.3D3.8 Murata Electronics North America, Inc.
BL02RN1R2M2B
Note 1: The components listed in this Bill of Materials are representative of the PCB assembly. The released BOM used in manufacturing uses all RoHS-compliant components.
2015 Microchip Technology Inc. DS50002445A-page 29
Bill of Materials (BOM)
1 J1 Conn. IEC 250V 15A inlet C14 TH R/A SCHURTER Inc. GSP1.9103.1
2 J2, J4 Conn. IEC 250V 15A outlet C13 TH R/A SCHURTER Inc. 6182.0033
1 J3 Conn. pwr. 2.5mm 5.5mm switch TH R/A CUI Inc. PJ-002B
1 J5 Conn. header-2.54 male 1x4 tin 5.84 MH TH vert.
FCI 68002-404HLF
4 J6, J7, J8, J9 Conn. header-2.54 male 1x2 tin 6.10 MH TH vert.
Molex® 0022284020
1 J10 Conn. USB mini-B female TH vert. Molex® Connector Corporation
500075-1517
2 JP2, JP3 Conn. header-2.54 male 1x3 gold 5.84 MH TH vert.
FCI 68000-103HLF
2 JP4, JP5 Mech. HW jumper 2.54 mm 1x2 handle gold
TE Connectivity, Ltd. 881545-2
2 L1, L2 Inductor 1 mH 240 mA 20% SMD L6W6H2.4
Coilcraft® LPS6225-105MRB
1 LABEL1 Label, NEED HELP WITH ASSY/SERIAL
1 LABEL2 Mech. HW LABEL HIGH VOLTAGE Panduit Corp. PLD-56
4 LD1, LD2, LD3, LD4
Diode LED red 1.95V 30 mA 700 MCD clear SMD 0603
Kingbright Electronic Co., Ltd.
APTD1608SURCK
1 LD5 Diode LED bi. red, green 1.95V, 2.1V 30 mA 0805
Kingbright Corp. APHBM2012SURKCGKC
1 MOV1 Resistor varistor 275V 130J TH disc 14 mm EPCOS AG S14K275E2K1
6 NUT1, NUT2, NUT3, NUT4, NUT5, NUT6
Hex. nut 0.217" steel M3 Keystone Electronics Corp.
4708
1 PCB1 Printed Circuit Board – MCP39F501 Power Monitor Demonstration Board
Microchip Technology Inc.
04-10480-1
2 R1, R9 Resistor shunt MF 0.002R 1% 2W 2512 Stackpole Electronics, Inc.
CSNL2512FT2L00
2 R2, R3 Res. TKF 499k 1% 3/4W SMD 2010 Vishay/Dale CRCW2010499KFKEF
2 R4, R10 Res. TKF 470R 5% 1W SMD 2512 Panasonic® - ECG ERJ-1TYJ471U
15 R5, R6, R7, R11, R18, R23, R24, R25, R26, R27, R28, R29, R30, R33, R34
Res. TKF 1k 1% 1/10W SMD 0603 Panasonic - ECG ERJ-3EKF1001V
1 R8 Res. TKF 5.1k 1% 1/10W SMD 0603 Panasonic - ECG ERJ-3EKF5101V
2 R12, R16 Res. TKF 2.05k 1% 1/10W SMD 0603 Yageo Corporation RC0603FR-072K05L
2 R13, R14 Res. TKF 4.7k 1% 1/10W SMD 0603 Panasonic - ECG ERJ-3EKF4701V
2 R15, R19 Res. TKF 51k 1% 1/10W SMD 0603 Panasonic - ECG ERJ-3EKF5102V
1 R17 Res. TKF 8.2k 1% 1/10W SMD 0603 Panasonic - ECG ERJ-3EKF8201V
1 R20 Res. TKF 33R 5% 1/10W SMD 0603 Yageo Corporation 9C06031A33R0JLHFT
4 R21, R22, R31, R32
Res. TKF 100R 5% 1/10W SMD 0603 Vishay/Dale CRCW0603100RJNEA
TABLE B-1: BILL OF MATERIALS (BOM) (CONTINUED)
Qty. Reference Description Manufacturer Part Number
Note 1: The components listed in this Bill of Materials are representative of the PCB assembly. The released BOM used in manufacturing uses all RoHS-compliant components.
2015 Microchip Technology Inc. DS50002445A-page 30
Bill of Materials (BOM)
1 R35 Resistor TKF 10k 1% 1/10W SMD 0603 Panasonic - ECG ERJ-3EKF1002V
6 SCR1, SCR2, SCR3, SCR4, SCR5, SCR6
Machine screw pan Phillips M3 Digi-Key® Electronics 335-1156-ND
4 TP1, TP2, TP4, TP5
Conn. TP pin tin TH Harwin Plc. H2121-01
1 U1 Microchip Analog Energy Measurement 4000:1 MCP39F511N-E/MQ QFN-28
Microchip Technology Inc.
MCP39F511N-E/MQ
1 U3 IC switcher LNK304 SO-8C Power Integrations™ LNK304DG-TL
1 U5 Microchip Analog LDO 3.3V MCP1754ST-3302E/DB SOT-223-3
Microchip Technology Inc.
MCP1754ST-3302E/DB
1 U6 IC photo ACSL-7210-06RE Bi-Dir. 3.3V and 5V SOIC-8
Avago Technologies ACSL-7210-06RE
4 U7, U8, U9, U10
IC Photo HCPL-181 4-SMD Avago Technologies HCPL-181-00CE
1 U11 Microchip interface USB I2C UART MCP2221-I/ST TSSOP-14
Microchip Technology Inc.
MCP2221-I/ST
TABLE B-1: BILL OF MATERIALS (BOM) (CONTINUED)
Qty. Reference Description Manufacturer Part Number
Note 1: The components listed in this Bill of Materials are representative of the PCB assembly. The released BOM used in manufacturing uses all RoHS-compliant components.
2015 Microchip Technology Inc. DS50002445A-page 31
DS50002445A-page 32 2015 Microchip Technology Inc.
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07/14/15